T2 inversions with reduced motion artifacts

a technology of motion artifacts and inversions, which is applied in the field of t2 inversions with reduced motion artifacts, can solve problems such as the decrease in the accuracy of data, and achieve the effects of short polarization time, and long polarization time tw

Active Publication Date: 2015-08-27
BAKER HUGHES INC
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Benefits of technology

[0003]Disclosed is a method for processing nuclear magnetic resonance (NMR) measurement data. The method includes: receiving, with a processor, NMR measurement data obtained from an NMR tool, the NMR measurement data being affected by a motion artifact and having a first echo train obtained with a long polarization time TWET and a second echo train obtained with a short polarization time TWTL that is shorter than TWET; and at least one of (i) reducing, with a processor, an effect on the NMR measurement data of the motion artifact using the first echo train and the second echo train and (ii) identifying, with a processor, the motion artifact using the first echo train and the second echo train; wherein the motion artifact is related to a magnetic field magnitude that varies in a volume of interest due to a motion of the NMR tool.
[0004]Also disclosed is a method for performing nuclear ma...

Problems solved by technology

The drill process, however, may cause the drill string to move laterally in the borehole thus continuously varying the distance from the NMR tool to the formation be...

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  • T2 inversions with reduced motion artifacts
  • T2 inversions with reduced motion artifacts
  • T2 inversions with reduced motion artifacts

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Embodiment Construction

[0020]A detailed description of one or more embodiments of the disclosed apparatus and method presented herein by way of exemplification and not limitation with reference to the figures.

[0021]Disclosed are method and apparatus for processing measurements performed by a nuclear magnetic resonance (NMR) tool that may be subject to motion in a borehole. Alternatively or in combination with tool motion, the NMR tool may have a non-axially symmetric magnetic field such that when the tool is rotated, the magnetic field magnitude varies at a fixed location in the formation. The motion may cause the NMR measurements to inaccurately quantify properties of the formation. The inaccuracy induced into the NMR measurements due to the motion (or non-axially symmetric magnetic field motion) is called a motion artifact. The processing techniques disclosed herein identify a motion artifact and remove it from the NMR measurement data to provide corrected NMR measurement data that more accurately quant...

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Abstract

A method for processing nuclear magnetic resonance (NMR) measurement data includes: receiving, with a processor, NMR measurement data obtained from an NMR tool, the NMR measurement data being affected by a motion artifact and having a first echo train obtained with a long polarization time TWET and a second echo train obtained with a short polarization time TWTL that is shorter than TWET; and at least one of (i) reducing, with a processor, an effect on the NMR measurement data of the motion artifact using the first echo train and the second echo train and (ii) identifying, with a processor, the motion artifact using the first echo train and the second echo train; wherein the motion artifact is related to a magnetic field magnitude that varies in a volume of interest due to a motion of the NMR tool.

Description

BACKGROUND[0001]Earth formations, or simply formations, may be used for various purposes such as hydrocarbon production, geothermal production, and carbon dioxide sequestration. In order to make optimal use of a formation, it is typically characterized using a downhole tool that is conveyed through a borehole penetrating the formation.[0002]One type of downhole tool is a nuclear magnetic resonance (NMR) tool that performs NMR measurements on the formation to determine various properties such as porosity for example. In one application referred to as logging-while-drilling, the NMR tool is coupled to a drill string. The NMR tool performs NMR measurements while the drill string is rotating causing a drill bit also coupled to the drill string to drill the borehole. The drill process, however, may cause the drill string to move laterally in the borehole thus continuously varying the distance from the NMR tool to the formation being characterized. Lateral motion of the NMR tool may also ...

Claims

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Application Information

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IPC IPC(8): G01R33/565G01V3/38G01V3/32
CPCG01R33/56509G01V3/38G01V3/32G01N24/081G01R33/448E21B47/00G01V3/18
Inventor BLANZ, MARTINTHERN, HOLGER FRANKCOMAN, RADU
Owner BAKER HUGHES INC
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